Search PubMed⌕ Search

Biomedical subjects

David H Overstreet

Publications and source records attributed to David H Overstreet.

10 recordsLinked to original sources

A 5-HT1A agonist and a 5-HT2c antagonist reduce social interaction deficit induced by multiple ethanol withdrawals in rats.

RATIONALE: Repeated withdrawals from chronic forced ethanol exposure sensitize animals to withdrawal-induced deficits in social interaction behavior. The deficits in social interaction behavior following withdrawal from continuous ethanol exposure can be reduced following acute treatments with 5-HT(2C) antagonists or 5-HT(1A) agonists. OBJECTIVES: The present study investigated whether prior treatment with these serotonergic agents during early withdrawals in rats subjected to repeated withdrawals from ethanol exposure would ameliorate the social interaction deficits observed following the final withdrawal. METHODS: Sprague-Dawley rats were exposed to three cycles of 5 days forced ethanol (7%, w/v), with 2 days of control diet after the first and second cycles. Drugs were administered IP 4 h after removal of ethanol on the first and second cycles but not the third in one group and 4.5 h after removal of ethanol on the third cycle in another. The social interaction test was performed 5 h after removal of ethanol on the third cycle. Drugs tested included SB-242084, a 5-HT(2C) antagonist; buspirone, a 5-HT(1A) partial agonist; WAY-100635, a 5-HT(1A) antagonist; ketanserin, a 5-HT(2A) antagonist; ritanserin, a mixed 5-HT(2A/2C) antagonist; and Ro-601075, a 5-HT(2C) agonist. RESULTS: Both SB-242084 and buspirone reduced ethanol withdrawal-induced deficits in social interaction when given either acutely 30 min before the test or at 4 h after withdrawal from the first and second cycles. WAY-100635 and ketanserin were completely ineffective regardless of mode of treatment. In contrast, the 5-HT(2C) agonist, Ro-601075, accentuated the withdrawal-induced deficit in social interaction behavior in rats exposed to either 4.5 or 7% ethanol diet. CONCLUSIONS: These results support the utility of 5-HT(1A) agonists and 5-HT(2C) antagonists in reducing anxiety-like behavior induced by ethanol withdrawal and reducing the adaptive changes associated with repeated withdrawals.

Aminopyridines↗

Serotonin produces an enhanced outward current recorded at rat dorsal lateral septal neurons from the Flinders Sensitive Line of rats, a genetically-selected animal model of depression.

Abnormalities in serotonin (5-HT), serotonin receptors, and serotonergic neurons have been reported in studies of brains from patients diagnosed clinically with depression. In this study, we examined a known cellular function of 5-HT(1A) receptor activation in dorsolateral septal nucleus (DLSN) neurons, namely, a concentration dependent 5-HT-induced outward current, and compared basic neuronal membrane properties and activities of DLSN neurons from two known genetic lines of rats. As compared to "control" rats (Flinders Resistant Line, FRL), DLSN neurons from Flinders Sensitive Line of rats (FSL) did not exhibit significant differences in resting membrane potential, membrane input resistance, or changes in typical spontaneous inhibitory or excitatory post-synaptic currents. FSL-rats exhibit a depressive phenotype and have been suggested to be rats with a genetic susceptibility to exhibit depressive behaviors. Exogenous application of 5-HT resulted in expected concentration-dependent outward currents; however, the amplitudes of these currents were enhanced significantly in 50% of DLSN neurons recorded from FSL rats compared to similar results recorded from FRL rats. Our results suggest that within a particular population of DLSN neurons from rats exhibiting a known phenotype of depression a post-synaptic 5-HT(1A) receptor is functionally hyper-responsive compared to controls.

Action Potentials↗

Involvement of 5-HT1A receptors in animal tests of anxiety and depression: evidence from genetic models.

Clinical studies have suggested the involvement of 5-HT1A receptors in anxiety and depressive disorders because partial 5-HT1A receptor agonists such as buspirone are therapeutic. The present review considers evidence from genetic animal models that support a role for 5-HT1A receptors in anxiety-like and depressed-like behavior in animals. Selective breeding for differential hypothermic responses to a selective 5-HT1A receptor agonist led to the development of the high DPAT sensitive (HDS) and low DPAT sensitive (LDS) lines of rats. The HDS rats differ from the LDS rats on several behavioral measures reflective of anxiety or depression, including reduced social interaction, reduced responding in a conflict task and exaggerated immobility in the forced swim test. However, they do not differ from the LDS rats in the elevated plus maze task, which is a commonly used test of anxiety. Nor do the HDS rats exhibit a typical anxiogenic response to the hippocampal administration of the 5-HT1A agonist. Although the HDS rats do exhibit elevations in 5-HT1A receptors in regions of the limbic cortex, it is not clear whether these increases account for the behavioral differences. Paradoxically, 5-HT1A receptor knockout mice also exhibit anxiety-like behavior in the plus maze, open field and conflict tests compared to wild type mice. However, the knockouts exhibited less immobility in the forced swim test than wild type control mice. Recent studies using selective regional reinstatement of the receptor have implicated the postsynaptic 5-HT1A receptors in these changes in anxiety-like behavior. Thus, preliminary evidence from two different types of genetic animal models suggests that anxiety-like behavior can arise if the 5-HT1A receptor function is eliminated or overexpressed. Further study with additional tests of anxiety are needed to confirm this intriguing relationship.

Animals↗

Herbal remedies for alcoholism: promises and possible pitfalls.

This review summarizes the findings of the effects on alcohol intake in alcohol-preferring rats of extracts or purified compounds from two of the most promising herbs: kudzu (Pueraria lobata) and St. John's Wort (Hypericum perforatum). It is a summary of a symposium presented at the 2002 RSA meeting in San Francisco. The meeting organizers/co-chairs were David Overstreet and Wing-Ming Keung. The presentations were (1) Introduction to the symposium, by David Y. W. Lee and David H. Overstreet; (2) Effects of daidzin on alcohol intake-search for mechanisms of action, by Wing-Ming Keung; (3) Long-term suppressive effects of puerarin on alcohol drinking in rats, by David Overstreet and David Y. W. Lee; (4) St. John's Wort extract reduces alcohol intake in FH and P rats, by Amir Rezvani and David Overstreet; and (5) extracts reduce alcohol intake in Marchigian Sardinian alcohol-preferring rats, by Maurizio Massi.

Alcohol Drinking↗

Behavioral characteristics of rat lines selected for differential hypothermic responses to cholinergic or serotonergic agonists.

The present review will describe the formation of two pharmacologically selected lines of rats, their behavioral phenotypes, their responses to select drugs, their possible neurochemical correlates, and their use to detect the therapeutic potential of antidepressant drugs. The Flinders Line rats were established at Flinders University in Australia by selectively breeding for differential responses to an anticholinesterase agent from outbred Sprague-Dawley (SD) rats; the Flinders Sensitive Line (FSL) rats were more sensitive to the hypothermic and behavioral suppressing effects of this agent than the Flinders Resistant Line (FRL) rats. The 8-OH-DPAT line rats were established at the University of North Carolina at Chapel Hill by selectively breeding for differential hypothermic responses to the 5-HT1A receptor agonist, 8-OH-DPAT; the high DPAT sensitive (HDS) line rats were more sensitive to the hypothermic effects of 8-OH-DPAT than the low DPAT sensitive (LDS) line rats. Studies of these two pairs of lines have indicated that the FSL and HDS rats are both more susceptible to stress-induced behavioral disturbances. Their usefulness in detecting potential antidepressant drugs and the relationship between mood disorders and drug abuse will be discussed.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Toxicity study of an antidipsotropic Chinese herbal mixture in rats: NPI-028.

OBJECTIVES: To determine the potential toxicity and safety of the Chinese herbal medicine NPI-028 in rats following subchronic (3-month) exposure via daily oral consumption. DESIGN: Subchronic toxicity was evaluated in four groups of rats (n = 10 per group) receiving NPI-028 orally at a dose of either 0.0 (normal diet control), 0.5, 1.0, or 2.0 g/kg, ingested as part of their daily diet for 3 months. NPI-028 was incorporated into powdered rat chow diet as a specific percent of the total diet provided each day. The primary active isoflavone content of NPI-028 (puerarin) used in the rat diet was also determined. OUTCOME MEASURES: Subchronic toxicity was assessed over a 3-month period by biweekly measurement of water and food intake, weight gain, and visual inspection for maintenance of grooming and normal behavior. At the end of the study period rats were euthanized and blood was obtained for hematologic and chemical analysis. Organs were removed for histopathologic examination. RESULTS: Rats in all three NPI-028 dose groups were similar to the control group in weight gain, food intake, and water intake over the study period. Hematology, blood chemistries, and organ histology in rats at all three NPI-028 doses did not significantly differ from control rats. Minor exceptions were elevated urea nitrogen values at all NPI-028 doses, and increased triglyceride and thyroid-stimulating hormone values in the lowest NPI-028 dose-treated group. Puerarin (used as a dietary isoflavone marker) content of NPI-028 was 26 mg/g dry weight. CONCLUSIONS: NPI-028 ingested orally at doses up to 2.0 g/kg per day in the rat diet for up to 3 months resulted in normal growth with no changes in hematologic or hepatic parameters, and only minor alterations in renal and blood chemistry parameters. There was no evidence of abnormal histology. These data suggest the long-term daily oral consumption of NPI-028 as a part of the daily diet for 3 months, at the doses studied, is safe in rats. Thus, NPI-028 may potentially be safe for clinical use as an antidipsotropic agent.

Administration, Oral↗

The Fawn-Hooded (FH/Wjd) rat: a genetic animal model of comorbid depression and alcoholism.

The Fawn-Hooded (FH/Wjd) rat is an inbred strain of rat that has been reported to exhibit both high immobility in the forced swim test and high voluntary ethanol intake, measures that have been periodically linked with depression and alcoholism in humans. The present paper will first present a survey of the literature and previously unpublished findings that bear on the question of whether FH/Wjd rats should be considered genetic animal models of depression and alcoholism. Subsequently, behavioral studies of the FH/Wjd rats, the non-drinking ACI/N strain, and their F1 and F2 intercrosses will be described. Under free choice conditions, the FH/Wjd rat drinks up to 6 g/kg 10% ethanol per day. This intake was sufficient to render the rats tolerant to the hypothermic effects of injected ethanol (2.5 g/kg). Rats that had been voluntarily drinking for at least 6 weeks also exhibited withdrawal-induced anxiety in the social interaction, elevated plus maze, and ultrasonic vocalization tasks. The FH/Wjd rat exhibits a 25-30% increase in alcohol intake when the alcohol is returned after a 24-h period of deprivation. It responds to drugs that are effective in humans with a reduction in alcohol intake. Therefore, the FH/Wjd rat meets most of the criteria for an animal model of alcoholism. Chronic antidepressant treatments correct several of the abnormalities exhibited by the FH/Wjd rats, including the exaggerated immobility in the forced swim test. Therefore, the FH/Wjd rats also fulfill some of the criteria for an animal model of depression. On the contrary, inbred ACI/N rats do not drink much alcohol voluntarily and are quite active in the forced swim test. The FH/Wjd and ACI/N rats were intercrossed to obtain the F1 and F2 progenies, which were then tested for alcohol intake and immobility. Alcohol intake and immobility were distributed in different patterns in the F1 and F2 progenies. Alcohol intake was intermediate in the F1 progeny, while immobility was closer to the FH/Wjd parents. In the F2 progeny, chi-square analyses indicated that the distributions were significantly different. In addition, there were no significant litter effects, indicating that maternal effects did not appear to occur. There were also no significant differences among rats with different coat colors, suggesting that the Fawn-Hooded phenotype can be separated from the measures of alcohol intake and immobility. We conclude that the FH/Wjd rat is a genetic animal model of depression and alcoholism, but that the two measures reflective of these states are under separate genetic controls.

Alcoholism↗

Accentuated decrease in social interaction in rats subjected to repeated ethanol withdrawals.

BACKGROUND: Previous work has shown that repeated withdrawals from chronic ethanol exposure can kindle seizures in rodents. In this article, the effects of a three-cycle model of ethanol exposure and withdrawal on the social interaction test of anxiety are summarized. METHODS: Rats were exposed to ethanol (7% or 4.5%) diets over three periods of 5 days, with 2 days of withdrawal between cycles. Between 5 and 6 hr after the ethanol was removed, pairs of rats were placed in open field chambers for the assessment of social interaction behavior and locomotor activity. RESULTS: After the third cycle of ethanol (7%) presentation, both male and female rats exhibited lower social interaction behavior (more anxiety) and activity than after a single cycle. Rats exposed to a similar amount of ethanol but tested while ethanol was still available did not exhibit a reduction in social interaction. The decrease in social interaction was still present for up to 24 hr but had disappeared by 48 hr after ethanol was withdrawn. When rats were allowed 8 or 16 days to recover from the effects of the three-cycle protocol, a further exposure to 5 days of 7% ethanol diet resulted in a reduction in social interaction on withdrawal similar to that seen from the three-cycle protocol. In contrast, rats exposed continuously to 7% ethanol diet for 15 consecutive days exhibited higher levels of social interaction when maintained on control diet for 8 or 16 days and then reexposed to ethanol. Rats that were exposed to the three-cycle protocol and allowed 32 days to recover before being reexposed to ethanol still had a partial deficit in social interaction. Finally, animals subjected to repeated withdrawals from 4.5% ethanol exhibited a reduction in social interaction without a change in activity after the final withdrawal from ethanol, whereas rats exposed continuously to a 4.5% ethanol diet did not exhibit a reduction in social interaction or activity. Neither blood ethanol concentrations nor changes in body weight could account for these behavioral differences. CONCLUSION: Repeated withdrawal from ethanol can lead to accentuated or more persistent anxiety-like behavior in rats, as indicated by a decrease in social interaction. The withdrawal-induced decrease in locomotor activity is not accentuated by repeated withdrawals. This model of repeated withdrawals from ethanol may prove useful in defining the neurochemical basis of this accentuation.

Animals↗

Reduced primary antibody responses in a genetic animal model of depression.

OBJECTIVE: Clinical depression is associated with multiple abnormalities of immune function, including reduced virus-specific responses. This study tested the hypothesis that the Flinders Sensitive Line (FSL) rat, a promising genetic animal model of depression, would exhibit reductions in antigen-specific primary antibody responses to immunization. METHODS: FSL (N = 13) and control Flinders Resistant Line (FRL; N = 14) rats were immunized with the protein antigen keyhole limpet hemocyanin (KLH; 300 microg/kg), and KLH-specific immunoglobulin (Ig)M, IgG, IgG1, and IgG2a responses were measured before and 3, 5, 7, 11, and 14 days after immunization. In separate experiments, production of interferon-gamma (IFN-gamma) by cells from naive and KLH-immunized animals was measured in vitro to determine whether strain differences in antibody production might be associated with differential production of this regulatory cytokine. RESULTS: KLH-specific production of IgM (p <.01) and IgG2a (p <.05) was significantly reduced in the FSL rats compared with the FRL controls. There were no strain differences in IgG or IgG1 production. Although IFN-gamma production between the two strains was similar in naive animals, cells from KLH-immunized FSL rats produced significantly less IFN-gamma when stimulated with KLH in vitro than cells from KLH-immunized FRL controls (p =.01). CONCLUSIONS: This study extends previous reports of altered immune function in the FSL rats to include reduced in vivo antigen-specific antibody responses. Moreover, diminished production of IFN-gamma by KLH-primed lymphocytes may contribute to lower antibody production in these animals. Collectively, these data suggest deficiencies in type 1 T-helper cell-mediated immunity in the FSL rats.

Animals↗